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首页> 外文期刊>Journal of Materials Processing Technology >Hybrid joining process for carbon fiber reinforced thermosetting plastic and metallic thin sheets by chemical bonding and plastic deformation
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Hybrid joining process for carbon fiber reinforced thermosetting plastic and metallic thin sheets by chemical bonding and plastic deformation

机译:碳纤维增强热固性塑料和金属薄板通过化学键合和塑性变形的混合接合工艺

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摘要

A new joining process for thin metallic and continuous carbon fiber reinforced thermosetting plastic (CFRP) sheets is proposed. This joining process is a hybrid of chemical bonding and plastic deformation, usable for ultra-lightweight structures. In contrast to conventional joining methods, such as rivet joining with an adhesive, the proposed method does not require any additional components and can eliminate holes that would cut the continuous carbon fibers and cause stress concentration. Hence, a smaller weight and a higher joining quality can be attained, especially for thin sheets. Aiming at making comparison and demonstrating the applicability of the proposed hybrid joining method, two thermosetting CFRP sheets with different laminates were used as lap adherends in the experiment. The effects of the deformation temperature, the use of a dummy sheet and the relative positions of the sample and dummy sheet on the joining quality were systematically investigated and optimized. The optimal hybrid joint shows high-quality bonding without delamination or adhesive failure. The tensile shear test of single-lap A2017P-CFRP hybrid joints manufactured under optimal experimental conditions indicates that, compared with adhesive bonding and conventional rivet joining with an adhesive, the proposed joining method has obvious superiority in terms of tensile shear load, slip displacement and absorption energy.
机译:提出了一种用于薄金属和连续碳纤维增强热固性塑料(CFRP)板材的新连接工艺。这种连接过程是化学粘结和塑性变形的混合,可用于超轻型结构。与传统的连接方法(例如用粘合剂的铆钉连接)相比,所提出的方法不需要任何其他组件,并且可以消除会切断连续碳纤维并引起应力集中的孔。因此,可以实现更轻的重量和更高的接合质量,尤其是对于薄片。为了进行比较并证明所提出的混合连接方法的适用性,在实验中将两张具有不同层压材料的热固性CFRP薄板用作搭接被粘物。系统地研究和优化了变形温度,假板的使用以及样品和假板的相对位置对连接质量的影响。最佳的混合接头显示了高质量的粘结,而没有分层或粘合失败。在最佳实验条件下制造的单圈A2017P-CFRP混合接头的拉伸剪切试验表明,与胶粘剂粘结和传统的用粘合剂铆钉连接相比,所提出的连接方法在拉伸剪切载荷,滑移位移和抗拉强度方面具有明显的优势。吸收能量。

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